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Developmental origin of a major difference in sensory patterning between zebrafish and bluefin tuna

机译:斑马鱼和蓝鳍金枪鱼的感官模式上的主要差异的发展起源

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The posterior lateral line system (PLL) of teleost fish comprises a number of mechanosensory organs arranged in defined patterns on the body surface. Embryonic patterns are largely conserved among teleosts, yet adult patterns are highly diverse. Although changes in pattern modify the perceptual abilities of the system, their developmental origin remains unknown. Here we compare the processes that underlie the formation of the juvenile PLL pattern in Thunnus thynnus, the bluefin tuna, to the processes that were elucidated in Danio rerio, the zebrafish. In both cases, the embryonic PLL comprises five neuromasts regularly spaced along the horizontal myoseptum, but the juvenile PLL comprises four roughly parallel anteroposterior lines in zebrafish, whereas it is a simple dorsally arched line in tuna fish. We examined whether this difference involves evolutionary novelties, and show that the same mechanisms mediate the transition from embryonic to juvenile patterns in both species. We conclude that the marked difference in juveniles depends on a single change (dorsal vs. ventral migration of neuromasts) in the first days of larval life.
机译:硬骨鱼的后侧向线系统(PLL)包括许多机械感官器官,这些机械感官器官以定义的模式排列在体表上。硬骨鱼类中的胚胎模式大部分被保存,而成虫模式则高度多样化。尽管模式的改变会改变系统的感知能力,但是它们的发展起源仍然是未知的。在这里,我们将蓝鳍金枪鱼(Thunnus thynnus)蓝鳍金枪鱼中少年PLL模式的形成过程与斑马鱼Danio rerio中阐明的过程进行了比较。在这两种情况下,胚胎PLL包括沿水平肌隔规则排列的五个神经质,而幼年PLL则在斑马鱼中包括四个大致平行的前后线,而在金枪鱼中则是简单的背弓形线。我们检查了这种差异是否涉及进化的新颖性,并显示出相同的机制介导了两个物种中从胚胎到幼稚模式的过渡。我们得出的结论是,幼虫的显着差异取决于幼虫生命初期的单个变化(神经质的背侧向腹侧迁移)。

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